Chao Yu-Chiang, Cheng Kai-Ping, Lin Ching-Yi, Chang Yu-Li, Ko Yi-Yun, Hou Tzu-Yin, Huang Cheng-Yi, Chang Walter H, Lin Cheng-An J
Department of Physics, National Taiwan Normal University, Taipei, 11677, Taiwan.
Department of Physics and Center for Nanotechnology, Chung Yuan Christian University, Chung-Li, 32023, Taiwan.
Sci Rep. 2018 Jun 11;8(1):8860. doi: 10.1038/s41598-018-27201-x.
Solution-processed optoelectronic devices are attractive because of the potential low-cost fabrication and the compatibility with flexible substrate. However, the utilization of toxic elements such as lead and cadmium in current optoelectronic devices on the basis of colloidal quantum dots raises environmental concerns. Here we demonstrate that white-light-emitting diodes can be achieved by utilizing non-toxic and environment-friendly gold nanoclusters. Yellow-light-emitting gold nanoclusters were synthesized and capped with trioctylphosphine. These gold nanoclusters were then blended with the blue-light-emitting organic host materials to form the emissive layer. A current efficiency of 0.13 cd/A was achieved. The Commission Internationale de l'Eclairage chromaticity coordinates of (0.27, 0.33) were obtained from our experimental analysis, which is quite close to the ideal pure white emission coordinates (0.33, 0.33). Potential applications include innovative lighting devices and monitor backlight.
溶液处理的光电器件因其潜在的低成本制造以及与柔性基板的兼容性而具有吸引力。然而,当前基于胶体量子点的光电器件中使用铅和镉等有毒元素引发了环境问题。在此,我们证明了利用无毒且环境友好的金纳米团簇可以实现白光发光二极管。合成了发射黄光的金纳米团簇并用三辛基膦进行包覆。然后将这些金纳米团簇与发射蓝光的有机主体材料混合以形成发光层。实现了0.13 cd/A的电流效率。通过实验分析获得了国际照明委员会色度坐标(0.27, 0.33),这与理想的纯白光发射坐标(0.33, 0.33)相当接近。潜在应用包括创新型照明设备和显示器背光源。